Electric power-systems are one of the most important critical infrastructures. In recent years, they have been exposed to extreme stress due to the increasing demand, the introduction of distributed renewable energy sources, and the development of extensive interconnections. We investigate the phenomenon of abrupt breakdown of an electric power-system under two scenarios: load growth (mimicking the ever-increasing customer demand) and power fluctuations (mimicking the effects of renewable sources). Our results on real, realistic and synthetic networks indicate that increasing the system size causes breakdowns to become more abrupt; in fact, mapping the system to a solvable statistical-physics model indicates the occurrence of a first order transition in the large size limit. Such an enhancement for the systemic risk failures (black-outs) with increasing network size is an effect that should be considered in the current projects aiming to integrate national power-grids into "super-grids".

Abruptness of Cascade Failures in Power Grids

Antonio Scala
2015

Abstract

Electric power-systems are one of the most important critical infrastructures. In recent years, they have been exposed to extreme stress due to the increasing demand, the introduction of distributed renewable energy sources, and the development of extensive interconnections. We investigate the phenomenon of abrupt breakdown of an electric power-system under two scenarios: load growth (mimicking the ever-increasing customer demand) and power fluctuations (mimicking the effects of renewable sources). Our results on real, realistic and synthetic networks indicate that increasing the system size causes breakdowns to become more abrupt; in fact, mapping the system to a solvable statistical-physics model indicates the occurrence of a first order transition in the large size limit. Such an enhancement for the systemic risk failures (black-outs) with increasing network size is an effect that should be considered in the current projects aiming to integrate national power-grids into "super-grids".
2015
Istituto dei Sistemi Complessi - ISC
Inglese
4
January
9
http://www.nature.com/srep/2014/140115/srep03694/full/srep03694.html
Sì, ma tipo non specificato
Electrical and electronic engineering
Complex networks
Power Grids
Published 15 January 2014. A.S. acknowledges the support from US grant HDTRA1-11-1-0048, the CNR-PNR National Project "Crisis-Lab" and EU IP project MULTIPLEX nr.317532.
3
info:eu-repo/semantics/article
262
Pahwa, Sakshi; Scoglio, Caterina; Scala, Antonio
01 Contributo su Rivista::01.01 Articolo in rivista
open
   Foundational Research on MULTIlevel comPLEX networks and systems
   MULTIPLEX
   FP7
   317532
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/265383
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